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Leaderless consensus control of nonlinear multi-agent systems under directed topologies subject to input saturation using adaptive event-triggered mechanism

机译:使用自适应事件触发机制对指向拓扑结构的非线性多种子体系统的无限共识控制

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摘要

This paper deals with the leaderless consensus controller design for nonlinear multi-agent systems (MASs) subject to the input saturation nonlinearity by using an event-triggered (ET) mechanism. An adaptive ET scheme has been established with variable threshold parameter for attaining an efficient control bandwidth. Linear parameter varying (LPV) formulation and region of stability investigation for dealing with the inherent nonlinearity and input saturation, respectively, are focused in the study. A consensus controller design condition has been formulated to ensure the regional stability, to determine the consensus protocol gains, to choose the parameters of ET mechanism, and to select an appropriate adaptation law for ET control. Elimination of Zeno behavior, based on nonlinearity bounds, for the adaptive ET mechanism has been ensured through a rigorous analysis. In contrast to excising methods, a directed communication topology, adaptive ET mechanism, and removal of Zeno behavior as well as elimination of the windup effect of saturation have been considered in our work. A simulation study has been provided for six robotic agents and comparison results with the existing method are revealed. (C) 2021 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
机译:本文通过使用事件触发(et)机制,处理非线性多智能体系(质量)的非线性多种子体系统(质量)的无线共识控制器设计。已经通过可变阈值参数建立了Adaptive ET方案,以获得有效的控制带宽。用于处理固有的非线性和输入饱和度的线性参数变化(LPV)制剂和稳定性调查区域,重点是该研究。已制定共识控制器设计条件以确保区域稳定,以确定共识议定书,选择ET机制的参数,选择ET控制的适当适应法。通过严谨的分析确保了基于非线性界的基于非线性界的ZENO行为。与Exiscist方法相比,在我们的工作中,已经考虑了针对沟通拓扑,适应性ET机制和去除ZENO行为以及消除饱和度的卷绕效果。已经为六种机器人试剂提供了模拟研究,并揭示了现有方法的比较结果。 (c)2021年富兰克林学院。 elsevier有限公司出版。保留所有权利。

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    《Journal of the Franklin Institute》 |2021年第12期|6217-6239|共23页
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    Pakistan Inst Engn & Appl Sci PIEAS Dept Elect Engn Islamabad Pakistan;

    Pakistan Inst Engn & Appl Sci PIEAS Dept Elect Engn Islamabad Pakistan;

    Pakistan Inst Engn & Appl Sci PIEAS Dept Elect Engn Islamabad Pakistan;

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